Numerical Analysis of Steep Wave-Induced Seabed Response and Liquefaction Around Gravity-Based Offshore Foundations

Yuzhu Li, M. Ong, O. Gudmestad, B. Hjertager
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Abstract

Gravity-based offshore foundations generally consist of a bottom slab and one or more cylindrical shafts on top of it. The geometry of the structure can strongly affect the flow pattern, dynamic wave pressure and further soil response and the liquefaction risk in the vicinity of the foundation. In this work, gravity-based foundations with bottom slabs of cylindrical shape and hexagonal prismatic shape are investigated. An integrated wave-structure-seabed interaction model applied in this work is developed in Open-FOAM, incorporating a nonlinear wave solver, a linear elastic structure solver and an anisotropic Biot’s poroelastic soil solver consisting of consolidation and liquefaction modules. Soil consolidation behavior in the presence of the foundations is investigated. It is found that the corners of the hexagonal foundation cause stress concentration in the soil. Therefore the initial effective stress around the hexagon corners is relatively high. Then, fully nonlinear waves modelled by fifth-order stream functions are simulated. Wave-induced pressure distributions and momentary liquefaction depths around the foundations are predicted.
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海上重力基础周围陡波诱发海床响应及液化的数值分析
基于重力的海上基础通常由底板和顶部的一个或多个圆柱形轴组成。结构的几何形状对基础附近的流态、动波压力和进一步的土壤响应以及液化风险有很大的影响。在这项工作中,研究了底部板为圆柱形和六边形棱柱形的重力基础。在Open-FOAM中建立了一个由固结和液化模块组成的非线性波浪解算器、线性弹性结构解算器和各向异性Biot 's孔弹性土解算器组成的波浪-结构-海底相互作用集成模型。研究了地基存在时土体的固结行为。研究发现,六角形地基的四角会引起土体应力集中。因此,六角形周围的初始有效应力相对较高。然后,用五阶流函数模拟了全非线性波。预测了地基周围波浪压力分布和瞬时液化深度。
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